Shield holding handle damping structure
By introducing shock-absorbing and adjustment components into the shield grip handle, and utilizing the cooperation of slide rods, springs, and damping rods to achieve cushioning and shock absorption, the problem of hand fatigue and injury caused by traditional shield grip handles is solved, improving user comfort and operational accuracy.
Patent Information
- Application Number
- CN202520271205.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-20
- Publication Date
- 2026-01-20
- Estimated Expiration
- 2035-02-20
AI Technical Summary
Traditional shield grips lack cushioning, leading to hand fatigue, numbness, and even injury during prolonged use.
A shield grip handle structure including a shock-absorbing component and an adjustment component was designed. The combination of a slide bar, a spring, and a damping bar achieves buffering and shock absorption effects. The hollow design of the flexible handle further enhances the shock absorption effect. At the same time, the handle diameter can be adjusted by the adjustment component to accommodate different hand sizes.
It effectively reduces vibration and pressure on the user's hands, improves user comfort and combat effectiveness, adapts to different hand sizes, and reduces hand fatigue and injury.
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Figure CN223814295U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model belongs to the technical field of holding handle structure, especially relates to a shield holding handle damping structure. BACKGROUND
[0002] The conventional shield holding handle is made of metal material, although the metal has high strength, but lacks effective buffer structure, due to its own weight and the reaction force generated when subjected to external impact force, often bring greater vibration and pressure to the hand of the user, long time use can cause hand fatigue, numbness and even injury, therefore a shield holding handle damping structure is proposed. CONTENT OF UTILITY MODEL
[0003] The utility model discloses a shield holding handle damping structure, through setting up damping assembly, specifically is when shield body is subjected to external force and is beaten, will slide to the sleeve inside through the fixed plate and drive two slide rods, and when two slide rods slide, will extrude spring, then spring will buffer the force received, consume the force of fixed plate and give connecting block, thus play certain damping effect, simultaneously because flexible handle is flexible setting, and flexible handle inside is hollow design, further promoted the damping effect, solved because its own weight and the reaction force generated when subjected to external impact force, often bring greater vibration and pressure to the hand of the user, long time use can cause hand fatigue, numbness and even injury.
[0004] To solve the above technical problem, the utility model is realized through the following technical schemes:
[0005] The utility model discloses a shield holds handle damping structure, including main frame mechanism, the main frame mechanism includes shield body, the fixed plate is fixedly connected with the back of shield body, the arm protection is provided with on the left side of fixed plate, the arm protection front surface is fixedly connected with the back of shield body, the fixed plate back is provided with damping assembly, the damping assembly bottom is provided with adjusting assembly, the adjusting assembly includes cavity, the damping assembly includes flexible handle, the side of flexible handle close to fixed plate is provided with two sleeve pipes, two the inside of sleeve pipe is all slidably connected with slide rod, two the side of slide rod away from sleeve pipe is fixedly connected with the back of fixed plate, two slide rod 214 away from the one end of fixed plate 113 is all fixedly connected damping rod 216, two damping rod 216 all are through sleeve pipe 213 and are fixedly connected with connecting block 212, two damping rod 216 outer surface all are sleeved with sleeve pipe 213, two sleeve pipe 213 both ends are respectively abutted with slide rod 214 and sleeve pipe 213 inner wall, when shield body is hit by external force, will drive two slide rods to slide to the inside of sleeve pipe through fixed plate, and when two slide rods slide, will extrude spring, then spring will buffer the force received, and through the effect of damping rod, the force that fixed plate gives connecting block is consumed, so as to play certain damping effect, and because flexible handle is flexible, and the inside of flexible handle is hollow design, further improve the damping effect.
[0006] Further, the side of two spring away from sleeve pipe is fixedly connected with the side of slide rod away from fixed plate, the side of two spring away from slide rod is fixedly connected with the side of sleeve pipe inner wall away from slide rod, the side of two sleeve pipe away from slide rod is fixedly connected with connecting block, the top and bottom of two connecting block corresponding side are fixedly connected with flexible handle, when two slide rods slide, will extrude spring, then spring will contract and store energy under the action of connecting block limiting, and spring will buffer the force received, and the force that fixed plate gives connecting block is consumed, when the force that connecting block is received slows down, flexible handle will slow down the force received along with, therefore will play certain damping effect.
[0007] Further, the front of cavity is fixedly connected with the back of shield body, the right side rotationally connected with threaded rod in the inside of cavity, the threaded rod is through cavity and extends to right side, the right side of cavity is provided with knob, the inside of knob is fixedly connected with the outer surface of threaded rod, the left side of knob is provided with sealing ring, and the user can adjust the diameter of flexible handle according to the size of palm, and specifically is clockwise rotating knob and drives threaded rod to rotate.
[0008] Further, the sealing ring is rotatably connected with the outer surface of the threaded rod, the left side of the sealing ring is fixedly connected with the right side of the cavity, and the sealing ring is arranged at the rotating connection position of the threaded rod and the cavity, so that the sealing effect is achieved, the air in the cavity is prevented from leaking, and the diameter of the flexible handle deviates from the preset value.
[0009] Further, the push plate is slidably connected in the cavity, the right side of the push plate is fixedly connected with the left side of the threaded rod, when the push plate slides in the cavity, the air in the cavity is extruded, and the air in the cavity enters the flexible handle through the air pipe.
[0010] Further, the air pipe is fixedly connected to the left side of the cavity, the air pipe penetrates the connecting block at the bottom and extends into the flexible handle, when the flexible handle is inflated, the flexible handle is expanded, so that the diameter of the flexible handle is adjusted, and hands of different sizes can hold the flexible handle.
[0011] The utility model has the following beneficial effects:
[0012] 1, the utility model discloses a shock -absorbing assembly, and specifically when the shield body is hit by external force and will drive two slide rods to slide to the sleeve inside through the fixed plate, and when the two slide rods slide, the spring is extruded, so that the spring buffers the force received, and through the action of the damping rod, the force of the connecting block brought by the fixed plate is consumed, so that a certain shock -absorbing effect is achieved, and the flexible handle is flexible, and the flexible handle is hollow, so that the shock -absorbing effect is further improved, the harm to the user is reduced, and the comfort of the user is greatly improved.
[0013] 2, the utility model discloses an adjusting assembly, and specifically when the knob is rotated clockwise, the push plate is slid in the cavity through the threaded rod, when the push plate slides in the cavity, the air in the cavity is extruded, so that the air in the cavity enters the flexible handle through the air pipe, when the flexible handle is inflated, the flexible handle is expanded, so that the diameter of the flexible handle is adjusted, hands of different sizes can hold the flexible handle, and the fighting efficiency and operation accuracy of the user are greatly improved.
[0014] Of course, any product implementing the utility model does not necessarily need to achieve all the advantages mentioned above. DRAWINGS
[0015] In order to more clearly illustrate the technical scheme of the embodiments of the present application, the following will briefly introduce the drawings needed to be used in the embodiment description, obviously, the drawings in the following description are only some embodiments of the present application, and for the ordinary skilled in the art, other drawings can be obtained without creative labor on the basis of these drawings.
[0016] Figure 1 It is the overall structure schematic diagram of the present application;
[0017] Figure 2 It is the overall structure schematic diagram of the shield body back of the present application;
[0018] Figure 3 It is the cross section structure schematic diagram of the flexible handle of the present application;
[0019] Figure 4 It is the present application Figure 3 It is the enlarged structure schematic diagram of A of the present application;
[0020] Figure 5 It is the cavity cross section structure schematic diagram of the present application.
[0021] In the drawings, the component list represented by each mark is as follows:
[0022] 1, main frame mechanism; 111, shield body; 112, arm guard; 113, fixed plate; 2, damping assembly; 211, flexible handle; 212, connecting block; 213, sleeve; 214, sliding rod; 215, spring; 216, damping rod; 3, adjusting assembly; 311, cavity; 312, knob; 313, threaded rod; 314, sealing ring; 315, push plate; 316, air pipe. DETAILED DESCRIPTION
[0023] The technical scheme in the embodiments of the present application will be described clearly and completely in combination with the drawings in the embodiments of the present application, obviously, the described embodiments are only some embodiments of the present application, not all the embodiments. Based on the embodiments in the present application, all the other embodiments obtained by the ordinary skilled in the art without creative labor are within the protection scope of the present application.
[0024] Please refer to Figures 1-5As shown, the utility model is a shield holding handle damping structure, including main frame mechanism 1, main frame mechanism 1 includes shield body 111, shield body 111 back surface fixedly connected with fixed plate 113, fixed plate 113 left side is provided with arm guard 112, arm guard 112 front surface is fixedly connected with shield body 111 back surface, fixed plate 113 back surface is provided with damping assembly 2, damping assembly 2 bottom is provided with adjusting assembly 3, adjusting assembly 3 includes cavity 311, damping assembly 2 includes flexible handle 211, and the side close to fixed plate 113 of flexible handle 211 is provided with two sleeves 213, and the inside of two sleeves 213 is slidably connected with slide rod 214, and the side away from sleeve 213 of two slide rods 214 is fixedly connected with the back surface of fixed plate 113, and the end away from fixed plate 113 of two slide rods 214 is fixedly connected with damping rod 216, and two damping rods 216 are all through sleeve 213 and are fixedly connected with connecting block 212, and the outer surface of two damping rods 216 is all sleeved with sleeve 213, and the both ends of two sleeves 213 are respectively abutted with slide rod 214 and sleeve 213 inner wall, when shield body 111 is hit by external force, will drive two slide rods 214 to slide to the inside of sleeve 213 through fixed plate 113, and when two slide rods 214 slide, will extrude spring 215, then spring 215 will buffer the force received, and through the effect of damping rod 216, the force that fixed plate 113 gives connecting block 212 is consumed, to this, a certain damping effect is played, and because flexible handle 211 is flexibly arranged, and the inside of flexible handle 211 is hollow design, further improve the damping effect, reduce the harm to user, greatly improve the comfort of user, the side away from sleeve 213 of two springs is all fixedly connected with the side away from fixed plate 113 of slide rod 214, the side away from slide rod 214 of two springs 215 is all fixedly connected with the side away from slide rod 214 of sleeve 213 inner wall, the side away from slide rod 214 of two sleeves 213 is all fixedly connected with connecting block 212, and the side corresponding of two connecting blocks 212 is all fixedly connected with the top and bottom of flexible handle 211, the front surface of cavity 311 is fixedly connected with shield body 111 back surface, and the right side in the inside of cavity 311 is rotatably connected with threaded rod 313, threaded rod 313 penetrates cavity 311 and extends to the right side, and the right side of cavity 311 is provided with knob 312, and the inside of knob 312 is fixedly connected with the outer surface of threaded rod 313, and the left side of knob 312 is provided with sealing ring 314, and the clockwise rotation of knob 312 drives push plate 315 to slide in the inside of cavity 311 through threaded rod 313, when push plate 315 slides in the inside of cavity 311, will extrude the air in the inside of cavity 311, then the air in the inside of cavity 311 will enter the inside of flexible handle 211 through air pipe 316, when the inside of flexible handle 211 is filled with air, will appear the inflation condition, to this, the size of flexible handle 211 diameter is adjusted, is convenient for the palm of different size to hold, greatly improves the fighting efficiency and operation accuracy of user,The sealing ring 314 is rotatably connected to the outer surface of the threaded rod 313, the left side of the sealing ring 314 is fixedly connected to the right side of the cavity 311, the cavity 311 is slidably connected with the push plate 315, the right side of the push plate 315 is fixedly connected to the left side of the threaded rod 313, the left side of the cavity 311 is fixedly connected with the air pipe 316, and the air pipe 316 penetrates the connecting block 212 at the bottom and extends into the flexible handle 211.
[0025] One specific application of the embodiment is: in use, first, the user inserts the forearm through the inside of the arm guard 112, and then holds the flexible handle 211 to use the shield body 111. During holding the flexible handle 211, the user can adjust the diameter of the flexible handle 211 according to the size of his palm. Specifically, the knob 312 is rotated clockwise to drive the threaded rod 313 to rotate, and the threaded rod 313 rotates to drive the push plate 315 to slide in the cavity 311. A sealing ring 314 is arranged at the rotating connection between the threaded rod 313 and the cavity 311, which has a certain sealing effect to prevent the gas in the cavity 311 from leaking, so that the diameter of the flexible handle 211 deviates from the preset value. When the push plate 315 slides in the cavity 311, the air in the cavity 311 is compressed, and the air in the cavity 311 enters the flexible handle 211 through the air pipe 316. When the flexible handle 211 is filled with air, it will expand to adjust the diameter of the flexible handle 211, which is convenient for different sizes of palms to hold. In subsequent use, when the shield body 111 is hit by external force, the shield body 111 drives the fixed plate 113 to move towards the flexible handle 211. When the fixed plate 113 moves, it drives the two slide rods 214 to move, and the two slide rods 214 slide into the sleeve 213. When the external force hits, the fixed plate 113 pushes the slide rod 214 to compress the spring 215, and the spring absorbs kinetic energy through elastic deformation; at the same time, the damping rod 216 generates frictional resistance with the sleeve 213, converts the impact energy into heat energy and dissipates, realizes two-stage damping, and when the two slide rods 214 slide, the spring 215 is extruded and shrinks under the limiting action of the connecting block 212. At the same time, the spring 215 can buffer the force received, and consume the force of the connecting block 212 brought by the fixed plate 113. When the force received by the connecting block 212 is reduced, the flexible handle 211 will also slow down the force received, so as to have a certain damping effect. At the same time, since the flexible handle 211 is flexible and hollow, the damping effect is further improved.
[0026] In the description of the specification, the description of the terms "one embodiment", "an example", "a specific example" and the like means that the specific features, structures, materials or characteristics described in connection with the embodiment or example are included in at least one embodiment or example of the utility model. In the specification, the illustrative description of the above terms does not necessarily refer to the same embodiment or example. Moreover, the specific features, structures, materials or characteristics described can be combined in any one or more embodiments or examples in a suitable manner.
[0027] The preferred embodiments of the utility model disclosed above are only used for helping to explain the utility model. The preferred embodiments do not describe all the details exhaustively, and also limit the utility model to only the specific implementation manners described. Obviously, according to the content of the specification, many modifications and changes can be made. The specification selects and specifically describes these embodiments in order to better explain the principles and practical applications of the utility model, so that the persons skilled in the art can well understand and utilize the utility model. The utility model is limited only by the claims and the entire scope and equivalents thereof.
Claims
1. A shock absorbing structure for a shield handle, characterized by: The utility model provides a shield is provided with the damping assembly (2) and the adjusting assembly (3), the damping assembly (2) is arranged on the back of the fixed plate (113), and the adjusting assembly (3) is arranged on the back of the shield body (111), the damping assembly (2) and the adjusting assembly (3) are connected through the fixed plate (113), the damping assembly (2) is connected with the adjusting assembly (3) through the fixed plate (113), and the damping assembly (2) is connected with the adjusting assembly (3) through the fixed plate (113). The damping assembly (2) includes a flexible handle (211), two sleeve pipes (213) are arranged on the side close to the fixed plate (113) of the flexible handle (211), two slide rods (214) are slidably connected in the two sleeve pipes (213), the back of the fixed plate (113) is fixedly connected with the two slide rods (214) away from the sleeve pipes (213), the damping rods (216) are fixedly connected with the two slide rods (214) away from the fixed plate (113), the two damping rods (216) penetrate through the sleeve pipes (213) and are fixedly connected with the connecting blocks (212), and the outer surfaces of the two damping rods (216) are sleeved with the sleeve pipes (213).
2. The shock absorbing structure of a shield holding handle according to claim 1, wherein The two springs (215) are fixedly connected with the slide rods (214) away from the fixed plate (113) on the side away from the sleeve pipes (213), the two sleeve pipes (213) are fixedly connected with the connecting blocks (212) on the side away from the slide rods (214), and the top and bottom of the flexible handle (211) are fixedly connected with the two connecting blocks (212) on the corresponding sides.
3. The shock absorbing structure of a shield holding handle according to claim 2, wherein The front surface of the cavity (311) is fixedly connected with the back surface of the shield body (111), a threaded rod (313) is rotatably connected to the right side in the cavity (311), and the threaded rod (313) penetrates through the cavity (311) and extends to the right side.
4. The shock absorbing structure of a shield holding handle according to claim 3, wherein A knob (312) is arranged on the right side of the cavity (311), the inner surface of the knob (312) is fixedly connected with the outer surface of the threaded rod (313), and a sealing ring (314) is arranged on the left side of the knob (312).
5. The shock absorbing structure of a shield holding handle according to claim 4, wherein The inner surface of the sealing ring (314) is rotatably connected with the outer surface of the threaded rod (313), and the left side of the sealing ring (314) is fixedly connected with the right side of the cavity (311).
6. The shock absorbing structure of a shield holding handle according to claim 5, wherein A push plate (315) is slidably connected in the cavity (311), and the right side of the push plate (315) is fixedly connected with the left side of the threaded rod (313).
7. The shock absorbing structure of a shield holding handle according to claim 6, wherein An air pipe (316) is fixedly connected to the air outlet on the left side of the cavity (311), the air pipe (316) penetrates through the connecting block (212) located at the bottom and extends to the inside of the flexible handle (211).